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Observations and analysis of FTU plasmas by video cameras

机译:摄像机对FTU等离子体的观察和分析

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The interaction of the FTU plasma with the vessel walls and with the limiters is responsible for the release of hydrogen and impurities through various physical mechanisms (physical and chemical sputtering, desorption, etc.). In the cold plasma periphery, these particles are weakly ionised and emit mainly in the visible spectral range. A good description of plasma periphery can then be obtained by use of video cameras. In FTU small size video cameras, placed close to the plasma edge, give wide-angle images of the plasma at a standard rate of 25 frames/s. Images are stored digitally, allowing their retrieval and analysis. This paper reports some of the most interesting features of the discharges evidenced by the images. As a first example, the accumulation of cold neutral gas in the plasma periphery above a density threshold (a phenomenon known as Marfe) can be seen on the video images as a toroidally symmetric band oscillating poloidally; on the multi-chord spectroscopy or bolometer channels, this appears only as a sudden rise of the signals whose overall behaviour could not be clearly interpreted. A second example is the identification of runaway discharges by the signature of the fast electrons emitting synchrotron radiation in their motion direction; this appears as a bean shaped bright spot on one toroidal side, which reverts according to plasma current direction. A relevant side effect of plasma discharges, as potentially dangerous, is the formation of dust as a consequence of some strong plasma-wall interaction event; video images allow monitoring and possibly estimating numerically the amount of dust, which can be produced in these events. Specialised software can automatically search experimental database identifying relevant events, partly overcoming the difficulties associated with the very large amount of data produced by video techniques.
机译:FTU等离子体与血管壁以及与限制器的相互作用负责通过各种物理机制(物理和化学溅射,解吸等)释放氢和杂质。在冷等离子体外围,这些粒子被弱离子化,主要在可见光谱范围内发射。然后可以通过使用摄像机获得对等离子体外围的良好描述。在FTU小型摄像机中,靠近等离子体边缘放置的图像以25帧/秒的标准速率提供等离子体的广角图像。图像以数字方式存储,可以对其进行检索和分析。本文报道了由图像证明的放电的一些最有趣的特征。作为第一个例子,在视频图像上,可以看到在等离子体边缘周围冷中性气体的积累超过了密度阈值(一种称为Marfe现象),即呈环形对称的带状振动;在多弦光谱或辐射热测量计通道上,这仅表现为信号的突然上升,其整体行为无法清楚地解释。第二个例子是通过沿其运动方向发射同步加速器辐射的快速电子的签名来识别失控放电。它在一个环形面上显示为豆形亮点,并根据等离子流方向恢复。潜在的危险性是等离子体放电的相关副作用是由于某些强烈的等离子体-壁相互作用事件而形成粉尘。视频图像可以监控并可能在数值上估计这些事件中可能产生的灰尘量。专用软件可以自动搜索识别相关事件的实验数据库,部分克服了与视频技术产生的大量数据相关的难题。

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